Publications by authors named "Cai N"

Background: Type 2 diabetes (T2D) results from a complex interplay between genetic predisposition and lifestyle factors. Both genetic susceptibility and unhealthy lifestyle are known to be associated with elevated T2D risk. However, their combined effects on T2D risk are not well studied.

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Psychiatric disorders are highly comorbid, heritable, and genetically correlated [1-4]. The primary objective of cross-disorder psychiatric genetics research is to identify and characterize both the shared genetic factors that contribute to convergent disease etiologies and the unique genetic factors that distinguish between disorders [4, 5]. This information can illuminate the biological mechanisms underlying comorbid presentations of psychopathology, improve nosology and prediction of illness risk and trajectories, and aid the development of more effective and targeted interventions.

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Hydrogen peroxide (HO) is an important chemical in synthetic chemistry with huge demands. Photocatalytic synthesis of HO via oxygen reduction and water oxidation reactions (ORR and WOR) is considered as a promising and desirable solution for on-site applications. However, the efficiency of such a process is low due to the poor solubility of molecular oxygen and the rapid reverse reaction of hydroxyl radicals (OH) with hydrogen atoms (H).

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Background: P. yunnanensis, a distinctive economic tree species native to Yunnan Province in China, possesses axillary buds that serve as superior material for asexual propagation. However, under natural growth conditions, the differentiation of these axillary buds is notably scarce.

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The spotted alfalfa aphid () is a kind of destructive pest of cultivated alfalfa () that results in significant financial losses for the livestock sector. To understand how navigates the biochemical defenses of its host, we investigated the effects of susceptible and resistant aphid strains on two alfalfa cultivars. was reared for over 50 generations on two cultivars-WL343, which is susceptible to , and Zhongmu No.

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Currently, the reported vancomycin (VCM) aptamers, including the 3- (K =  9.13 × 10 m) and 4-truncated variants (K = 45.5 × 10 m), are engineered via stem truncation of the VCM parent aptamer, which inevitably compromises their affinities, thus affecting their clinical application within the VCM therapeutic window of 6.

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Background: The cardiovascular risk profiles of trastuzumab drug conjugates (T-DCs) in the treatment of Human Epidermal Growth Factor Receptor 2 (HER2)-positive breast cancer are uncertain. This study analyzed real-world adverse events data from the Food and Drug Administration (FDA) Adverse Event Reporting System (FAERS) to investigate the association between T-DCs and major adverse cardiovascular events (MACE).

Methods: We searched the FAERS database for reports of cardiovascular adverse events in patients with HER2-positive breast cancer receiving trastuzumab, ado-trastuzumab emtansine (T-DM1), and trastuzumab deruxtecan (T-Dxd).

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In this report, we disclose the design and synthesis of a series of 2-trifluoromethyl-2H- chromene ethers as novel COX-2 inhibitors with low ulcerogenicity. Among them, 6-fluoro-3-(4-methoxyphenyl)-2-(2-(thiophen-3-yl)ethoxy)-2-(trifluoromethyl)-2H-chromene (E25) significantly suppressed LPS-induced release of NO and PGE, expression of COX-2 and iNOS, and activation of NF-κB pathway. The inhibitory effect of E25 on human recombinant COX-2 (IC = 70.

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The ability to simultaneously measure material mechanics and structure is central for understanding their nonlinear relationship that underlies the mechanical properties of materials, such as hysteresis, strain-stiffening and -softening, and plasticity. This experimental capability is also critical in biomechanics and mechanobiology research, as it enables direct characterizations of the intricate interplay between cellular responses and tissue mechanics. Stretching devices developed over the past few decades, however, do not often allow simultaneous measurements of the structural and mechanical responses of the sample.

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Identifying factors that affect treatment response is a central objective of clinical research, yet the role of common genetic variation remains largely unknown. Here, we develop a framework to study the genetic architecture of response to commonly prescribed drugs in large biobanks. We quantify treatment response heritability for statins, metformin, warfarin, and methotrexate in the UK Biobank.

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Accurate preoperative qualitative assessment of axillary lymph node metastasis (ALNM) in early breast cancer patients is crucial for precise clinical staging and selection of axillary treatment strategies. Although previous studies have introduced artificial intelligence (AI) to enhance the assessment performance of ALNM, they all focus on the prediction performances of their AI models and neglect the clinical assistance to the radiologists, which brings some issues to the clinical practice. To this end, we propose a human-AI collaboration strategy for ALNM diagnosis of early breast cancer, in which a novel deep learning framework, termed DAMF-former, is designed to assist radiologists in evaluating ALNM.

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is a downstream target gene of cellular nutrient and growth factors, oxidative stress responses, and insulin signaling pathways. It play a crucial role in insect growth, development, and reproduction. is a significant agricultural pest; therefore, the identification of novel control targets for its management is of significant importance.

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This commentary evaluates the study by Liu . This study investigates the predictive utility of the neutrophil-lymphocyte ratio, platelet-lymphocyte ratio, systemic immune-inflammation index, and carcinoembryonic antigen levels for post-operative intra-abdominal infection following colorectal cancer (CRC) surgery. The study highlights the critical need for analyzing diverse patient demographics and delves into the potential impact of various confounding factors on the predictive accuracy of these markers.

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Article Synopsis
  • Limited immune cell presence in tumors reduces the effectiveness of immune checkpoint blockade (ICB) therapy, leading researchers to combine it with mild photothermal therapy (PTT) to improve immune response.
  • Bioinformatics studies show that mild PTT increases immune cell infiltration and T-cell activity while also promoting the release of tumor-derived exosomes and raising PD-L1 expression on tumor cells.
  • A new multi-stage drug delivery system is created to deliver photosensitizers, anti-PD-L1 antibodies, and exosome inhibitors, using temperature-sensitive materials to improve therapeutic outcomes and reshape the tumor microenvironment for better response against "cold" tumors.
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In this research, we fabricated an innovative NiO/CN/Ag composite through the straightforward electrostatic assembly of Ag nanoparticles and g-CN sheets onto NiO nanoflowers. This composite enables both surface enhanced Raman spectroscopy (SERS) detection and photo-degradation of pesticides. The results reveal NiO/CN/Ag can quantitatively detect thiram (TRM) and diquat dibromide (DQDB) in water, with a limit of detection (LOD) of 10 M, and also exhibit outstanding photo-degradation efficiency, exceeding 95 % for TRM and DQDB within 90 min under simulated sunlight.

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Purpose: Highly complex tumor microenvironment makes hepatocellular carcinoma (HCC) as one of the most malignant tumors worldwide. The role of cellular senescence in HCC has been gradually recognized. The present study aimed to comprehensively elucidate the senescence-related features of HCC in single-cell and spatial dimension.

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Article Synopsis
  • * Researchers examined 231 patients and found that 31 had ST-1, with 80.6% of them carrying the c.544A>G mutation; they identified other NEU1 variants, including two novel ones.
  • * The study concluded that ST-1 should be considered in Southeastern Chinese patients exhibiting PMA or ataxia symptoms, suggesting that genetic testing for the NEU1 c.544A>G mutation could be a key diagnostic
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Background: Resveratrol (RSVL) is a plant-derived polyhydroxyphenolic compound with excellent anticancer properties, alone or in combination with other chemotherapeutic drugs. However, the anticancer mechanism of RSVL is diverse and high concentrations are often required for RSVL to exert its anticancer effect, which would also adversely affect normal cells.

Purpose: The main objective of this study is to investigate the molecular mechanism of how non-cytotoxic concentrations of RSVL enhance the anticancer effect of cisplatin involving a newly identified RSVL-binding protein.

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  • Large biobank samples allow researchers to combine detailed family histories and genetic data to investigate complex diseases.
  • The study introduces a new method called Pearson-Aitken Family Genetic Risk Scores (PA-FGRS) to estimate disease risk based on family medical histories.
  • Applying PA-FGRS to major depressive disorder (MDD) shows improved understanding of genetic factors and clinical variability, and enhances the effectiveness of genetic studies across different complex conditions.
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The neuropsychiatric symptoms are common in Wilson's disease (WD) patients. However, it remains unclear about the associated functional brain networks. In this study, source localization-based functional connectivity analysis of close-eye resting-state electroencephalography (EEG) were implemented to assess the characteristics of functional networks in 17 WD patients with neurological involvements and 17 healthy controls (HCs).

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Sims (2n = 18) is a perennial plant with high utilization values, but its spontaneous polyploidy in nature has yet to be seen. Thus, this study aims to enhance our understanding of polyploidy and provide rudimentary knowledge for breeding new cultivars. In this study, colchicine-induced tetraploid (2n = 36) was used as experimental material (T1, T2, and T3) to explore the variances between it and its diploid counterpart in morphology, physiology, and biochemical characteristics, and a comparison of their performance under cold stress was conducted.

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  • Scientists studied a gene called ACTL6A to see how it affects cancer and why it might be important.
  • They found that this gene is often increased in many types of cancer, which could make things worse for patients.
  • The research suggests that ACTL6A might also help immune cells enter tumors, which could be helpful for creating new ways to treat cancer.
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  • Aristolochic acid (AA) is known to cause kidney damage and birth defects, and it has been linked to heart failure (HF) through inflammatory processes, but its mechanisms in HF are not fully understood.* -
  • The study used zebrafish to examine how palmatine (PAL), a natural compound, can heal heart damage caused by AA by improving heart shape, blood flow, and energy metabolism, while also reducing inflammation.* -
  • Results suggest that PAL might work by enhancing the epidermal growth factor receptor (EGFR) signaling pathway, making it a promising candidate for developing treatments against HF caused by AA, highlighting the need for further research in this area.*
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Background: Traumatic digit amputation is a common injury with life-altering consequences for thousands of patients each year. In this study, we aim to update and expand the reported outcomes of return-to-work (RTW) and functional recovery in patients treated with digit replant after traumatic amputation.

Methods: A PRISMA-guided systematic review was performed to identify all published articles related to digit replantation following amputation.

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Catalytic reforming offers a promising method for converting waste plastics into valuable products such as carbon nanotubes (CNTs). The composition of the carbon source plays a crucial role in determining the growth of CNTs because pyrolysis temperature exerts a significant influence on volatilisation. This study investigated the impact of pyrolysis temperature on the formation of CNTs in the presence of an Fe/AlO catalyst.

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